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ASPH-notch Axis guided Exosomal delivery of Prometastatic Secretome renders breast Cancer multi-organ metastasis

BACKGROUND: Aspartate β-hydroxylase (ASPH) is silent in normal adult tissues only to re-emerge during oncogenesis where its function is required for generation and maintenance of malignant phenotypes. Exosomes enable prooncogenic secretome delivering and trafficking for long-distance cell-to-cell co...

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Autores principales: Lin, Qiushi, Chen, Xuesong, Meng, Fanzheng, Ogawa, Kosuke, Li, Min, Song, Ruipeng, Zhang, Shugeng, Zhang, Ziran, Kong, Xianglu, Xu, Qinggang, He, Fuliang, Bai, Xuewei, Sun, Bei, Hung, Mien-Chie, Liu, Lianxin, Wands, Jack, Dong, Xiaoqun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6836474/
https://www.ncbi.nlm.nih.gov/pubmed/31694640
http://dx.doi.org/10.1186/s12943-019-1077-0
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author Lin, Qiushi
Chen, Xuesong
Meng, Fanzheng
Ogawa, Kosuke
Li, Min
Song, Ruipeng
Zhang, Shugeng
Zhang, Ziran
Kong, Xianglu
Xu, Qinggang
He, Fuliang
Bai, Xuewei
Sun, Bei
Hung, Mien-Chie
Liu, Lianxin
Wands, Jack
Dong, Xiaoqun
author_facet Lin, Qiushi
Chen, Xuesong
Meng, Fanzheng
Ogawa, Kosuke
Li, Min
Song, Ruipeng
Zhang, Shugeng
Zhang, Ziran
Kong, Xianglu
Xu, Qinggang
He, Fuliang
Bai, Xuewei
Sun, Bei
Hung, Mien-Chie
Liu, Lianxin
Wands, Jack
Dong, Xiaoqun
author_sort Lin, Qiushi
collection PubMed
description BACKGROUND: Aspartate β-hydroxylase (ASPH) is silent in normal adult tissues only to re-emerge during oncogenesis where its function is required for generation and maintenance of malignant phenotypes. Exosomes enable prooncogenic secretome delivering and trafficking for long-distance cell-to-cell communication. This study aims to explore molecular mechanisms underlying how ASPH network regulates designated exosomes to program development and progression of breast cancer. METHODS: Stable cell lines overexpressing or knocking-out of ASPH were established using lentivirus transfection or CRISPR-CAS9 systems. Western blot, MTT, immunofluorescence, luciferase reporter, co-immunoprecipitation, 2D/3-D invasion, tube formation, mammosphere formation, immunohistochemistry and newly developed in vitro metastasis were applied. RESULTS: Through physical interactions with Notch receptors, ligands (JAGs) and regulators (ADAM10/17), ASPH activates Notch cascade to provide raw materials (especially MMPs/ADAMs) for synthesis/release of pro-metastatic exosomes. Exosomes orchestrate EMT, 2-D/3-D invasion, stemness, angiogenesis, and premetastatic niche formation. Small molecule inhibitors (SMIs) of ASPH’s β-hydroxylase specifically/efficiently abrogated in vitro metastasis, which mimics basement membrane invasion at primary site, intravasation/extravasation (transendothelial migration), and colonization/outgrowth at distant sites. Multiple organ-metastases in orthotopic and tail vein injection murine models were substantially blocked by a specific SMI. ASPH is silenced in normal adult breast, upregulated from in situ malignancies to highly expressed in invasive/advanced ductal carcinoma. Moderate-high expression of ASPH confers more aggressive molecular subtypes (TNBC or Her2 amplified), early recurrence/progression and devastating outcome (reduced overall/disease-free survival) of breast cancer. Expression profiling of Notch signaling components positively correlates with ASPH expression in breast cancer patients, confirming that ASPH-Notch axis acts functionally in breast tumorigenesis. CONCLUSIONS: ASPH-Notch axis guides particularly selective exosomes to potentiate multifaceted metastasis. ASPH’s pro-oncogenic/pro-metastatic properties are essential for breast cancer development/progression, revealing a potential target for therapy.
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spelling pubmed-68364742019-11-12 ASPH-notch Axis guided Exosomal delivery of Prometastatic Secretome renders breast Cancer multi-organ metastasis Lin, Qiushi Chen, Xuesong Meng, Fanzheng Ogawa, Kosuke Li, Min Song, Ruipeng Zhang, Shugeng Zhang, Ziran Kong, Xianglu Xu, Qinggang He, Fuliang Bai, Xuewei Sun, Bei Hung, Mien-Chie Liu, Lianxin Wands, Jack Dong, Xiaoqun Mol Cancer Research BACKGROUND: Aspartate β-hydroxylase (ASPH) is silent in normal adult tissues only to re-emerge during oncogenesis where its function is required for generation and maintenance of malignant phenotypes. Exosomes enable prooncogenic secretome delivering and trafficking for long-distance cell-to-cell communication. This study aims to explore molecular mechanisms underlying how ASPH network regulates designated exosomes to program development and progression of breast cancer. METHODS: Stable cell lines overexpressing or knocking-out of ASPH were established using lentivirus transfection or CRISPR-CAS9 systems. Western blot, MTT, immunofluorescence, luciferase reporter, co-immunoprecipitation, 2D/3-D invasion, tube formation, mammosphere formation, immunohistochemistry and newly developed in vitro metastasis were applied. RESULTS: Through physical interactions with Notch receptors, ligands (JAGs) and regulators (ADAM10/17), ASPH activates Notch cascade to provide raw materials (especially MMPs/ADAMs) for synthesis/release of pro-metastatic exosomes. Exosomes orchestrate EMT, 2-D/3-D invasion, stemness, angiogenesis, and premetastatic niche formation. Small molecule inhibitors (SMIs) of ASPH’s β-hydroxylase specifically/efficiently abrogated in vitro metastasis, which mimics basement membrane invasion at primary site, intravasation/extravasation (transendothelial migration), and colonization/outgrowth at distant sites. Multiple organ-metastases in orthotopic and tail vein injection murine models were substantially blocked by a specific SMI. ASPH is silenced in normal adult breast, upregulated from in situ malignancies to highly expressed in invasive/advanced ductal carcinoma. Moderate-high expression of ASPH confers more aggressive molecular subtypes (TNBC or Her2 amplified), early recurrence/progression and devastating outcome (reduced overall/disease-free survival) of breast cancer. Expression profiling of Notch signaling components positively correlates with ASPH expression in breast cancer patients, confirming that ASPH-Notch axis acts functionally in breast tumorigenesis. CONCLUSIONS: ASPH-Notch axis guides particularly selective exosomes to potentiate multifaceted metastasis. ASPH’s pro-oncogenic/pro-metastatic properties are essential for breast cancer development/progression, revealing a potential target for therapy. BioMed Central 2019-11-07 /pmc/articles/PMC6836474/ /pubmed/31694640 http://dx.doi.org/10.1186/s12943-019-1077-0 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Lin, Qiushi
Chen, Xuesong
Meng, Fanzheng
Ogawa, Kosuke
Li, Min
Song, Ruipeng
Zhang, Shugeng
Zhang, Ziran
Kong, Xianglu
Xu, Qinggang
He, Fuliang
Bai, Xuewei
Sun, Bei
Hung, Mien-Chie
Liu, Lianxin
Wands, Jack
Dong, Xiaoqun
ASPH-notch Axis guided Exosomal delivery of Prometastatic Secretome renders breast Cancer multi-organ metastasis
title ASPH-notch Axis guided Exosomal delivery of Prometastatic Secretome renders breast Cancer multi-organ metastasis
title_full ASPH-notch Axis guided Exosomal delivery of Prometastatic Secretome renders breast Cancer multi-organ metastasis
title_fullStr ASPH-notch Axis guided Exosomal delivery of Prometastatic Secretome renders breast Cancer multi-organ metastasis
title_full_unstemmed ASPH-notch Axis guided Exosomal delivery of Prometastatic Secretome renders breast Cancer multi-organ metastasis
title_short ASPH-notch Axis guided Exosomal delivery of Prometastatic Secretome renders breast Cancer multi-organ metastasis
title_sort asph-notch axis guided exosomal delivery of prometastatic secretome renders breast cancer multi-organ metastasis
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6836474/
https://www.ncbi.nlm.nih.gov/pubmed/31694640
http://dx.doi.org/10.1186/s12943-019-1077-0
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